Faculty of Medicine, Rayne Institute, University College London, London, UK.
Diabetes Obes Metab. 2010 Oct;12 Suppl 2:159-67. doi: 10.1111/j.1463-1326.2010.01276.x.
β-cells sense glucose and secrete appropriate amounts of insulin by coupling glucose uptake and glycolysis with quantitative ATP production via mitochondrial oxidative pathways. Therefore, oxidative phosphorylation is essential for normal β-cell function. Multiple cell types adapt to hypoxia by inducing a transcriptional programme coordinated by the transcription factor hypoxia-inducible factor (HIF). HIF activity is regulated by the von Hippel-Lindau (Vhl) protein, which targets the HIFα subunit for proteasomal degradation in the presence of oxygen. Several recent studies have shown that Vhl deletion in β-cells results in Hif1α activation, impaired glucose-stimulated insulin secretion (GSIS) and glucose intolerance. This was found to be because of alterations in β-cell gene expression inducing a switch from aerobic glucose metabolism to anaerobic glycolysis, thus disrupting the GSIS triggering pathway. Situations in which islets may become hypoxic are discussed, in particular islet transplantation which has been reported to cause islet hypoxia because of an inadequate blood supply post-transplant. Aside from this principal role for HIF in negatively regulating β-cell glucose sensing, other aspects of hypoxia signalling are discussed including β-cell differentiation, development and vascularization. In conclusion, recent studies clearly show that hypoxia response mechanisms can negatively impact on glucose sensing mechanisms in the β-cell and this has the potential to impair β-cell function in a number of physiological and clinical situations.
β 细胞通过将葡萄糖摄取和糖酵解与通过线粒体氧化途径的定量 ATP 产生偶联,感知葡萄糖并分泌适量的胰岛素。因此,氧化磷酸化对于正常的 β 细胞功能至关重要。多种细胞类型通过诱导由转录因子缺氧诱导因子 (HIF) 协调的转录程序来适应缺氧。HIF 活性受 von Hippel-Lindau (Vhl) 蛋白的调节,该蛋白在氧气存在下靶向 HIFα 亚基进行蛋白酶体降解。最近的几项研究表明,β 细胞中 Vhl 的缺失会导致 Hif1α 激活、葡萄糖刺激的胰岛素分泌 (GSIS) 受损和葡萄糖不耐受。这是因为β 细胞基因表达的改变诱导了从有氧葡萄糖代谢到无氧糖酵解的转变,从而破坏了 GSIS 触发途径。讨论了胰岛可能变得缺氧的情况,特别是胰岛移植,据报道,由于移植后血液供应不足,会导致胰岛缺氧。除了 HIF 在负调控β 细胞葡萄糖感应中的主要作用外,还讨论了缺氧信号转导的其他方面,包括β 细胞分化、发育和血管生成。总之,最近的研究清楚地表明,缺氧反应机制可能会对β 细胞中的葡萄糖感应机制产生负面影响,并有可能在多种生理和临床情况下损害β 细胞功能。